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Parameterization of the porous-material model for sand with different levels of water saturation

机译:含水饱和度不同的砂的多孔材料模型的参数化

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The experimental results for the mechanical response of sand (at different levels of saturation with water) under shock-loading conditions generated by researchers at Cavendish [Bragov AM, Lomunov AK, Sergeichev IV, Tsembelis K, Proud WG. The determination of physicomechanical properties of soft soils from medium to high strain rates, November 2005, in preparation; Chapman DJ, Tsembelis K, Proud WG. The behavior of water saturated sand under shock-loading. In: Proceedings of the 2006 SEM annual conference and exposition on experimental and applied mechanics, vol. 2, 2006.p.834-40] are used to parameterize our recently developed material model for sand [Grujicic M, Pandurangan B, Cheeseman B. The effect of degree of saturation of sand on detonation phenomena associated with shallow-buried and ground-laid mines. J Shock Vib 2006;13:41-61]. The model was incorporated into a general-purpose non-linear dynamics simulation program to carry out a number of simulation analyses pertaining to the detonation of a landmine buried in sand and to the interactions of the detonation products, mine fragments and sand ejecta with various targets. A comparison of the computed results with their experimental counterparts revealed a somewhat improved agreement with the experimental results in the case of the present model as compared to the agreement between the widely used porous-material/compaction model for sand and the experiments.
机译:卡文迪什[Bragov AM,Lomunov AK,Sergeichev IV,Tsembelis K,Proud WG。 2005年11月,准备测定从中等应变率到高应变率的软土的物理力学性能;查普曼(Chapman)DJ,滕贝里斯(Tsembelis K),骄傲工作组饱和水在冲击荷载作用下的行为。在:2006年SEM年度会议论文集和实验和应用力学博览会上,第一卷。 2006年2月2日,第834-40页)用于参数化我们最近开发的砂料模型[Grujicic M,Pandurangan B,CheesemanB。砂的饱和度对与浅埋地埋相关的爆轰现象的影响埋了地雷。 J Shock Vib 2006; 13:41-61]。该模型被并入通用非线性动力学仿真程序中,以进行与埋在沙子中的地雷的爆炸以及爆炸产物,矿山碎片和沙弹与各种目标的相互作用有关的许多模拟分析。 。计算结果与实验结果的比较表明,与广泛使用的砂土多孔材料/压实模型与实验之间的一致性相比,在本模型的情况下,与实验结果的一致性有所改善。

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